监测与大麻种植室内生长室和温室有关的环境因素

Prayuth Chiarakul, Sarin Pinich, Atch Sreshthaputra
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引用次数: 0

摘要

温室栽培没有季节限制,全球正在开展研究,评估温室内环境因素的控制情况,以优化生长条件。改善温室栽培环境因素的尝试包括控制温度、相对湿度、光照强度、二氧化碳含量和空气流速。此外,还开发和研究了室内栽培系统(生长室),以便与温室栽培进行比较。在我们的研究中,收集了与温室和生长室大麻种植相关的环境比较数据,因为商业大麻种植可以包括此类方法。因此,本研究中的数据是通过在两种种植方法中选择相同的大麻品种以及控制影响种植的内部生长环境收集的。此外,还收集了同一时间段内植物生化特性的数据,并使用精神计量图表对所收集的数据进行了分析。研究结果表明,如果对室内栽培方法的内部环境进行良好的调节,与环境调节不够精确的温室栽培相比,从开花植物中提取大麻二酚(CBD)的效果会更好。因此,我们得出结论,如果能将温室栽培的内部环境控制到与室内栽培方法相似,两种方法的生产率应该相近。这项研究成果可用于开发其他植物的温室栽培方法,以提高未来的生产率和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monitoring Environmental Factors Associated with Indoor Growth Chambers and Greenhouses for Cannabis Cultivation
Greenhouse cultivation has no seasonal limitations and research is being conducted globally to assess control of environmental factors within greenhouses to optimize growing conditions. Attempts to improve the environmental factors in greenhouse cultivation include control of temperature, relative humidity, light intensity, carbon dioxide level, and air flow rate. Furthermore, indoor cultivation systems (growth chambers) have been developed and researched for comparison with greenhouse cultivation. In our study, comparative environmental data were collected in association with cannabis cultivation for a greenhouse and growth chamber, since commercial cannabis cultivation can include such methods. Accordingly, the data in this research were collected by choosing the same cannabis cultivars for both cultivation methods and by controlling the internal growing environments that affected cultivation. Data also were collected on the plant biochemical properties over the same time period and the collected data were analyzed using psychrometric charts. The findings of this research show that if the internal environment of the indoor cultivation method is well-regulated, better results in cannabidiol (CBD) extraction from blossoms can be achieved as compared to greenhouse cultivation, in which environmental regulation is less precise. Therefore, we conclude that if we can control the internal environment of greenhouse cultivation to be similar to the indoor cultivation method, the productivity of the two methods should be similar. The findings of this research can be used to develop greenhouse cultivation methods for other plants in order to improve future productivity and efficiency.
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